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首页> 外文期刊>Wiley interdisciplinary reviews. Systems biology and medicine >Riding the crest of the wave: parallels between the neural crest and cancer in epithelial-to-mesenchymal transition and migration
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Riding the crest of the wave: parallels between the neural crest and cancer in epithelial-to-mesenchymal transition and migration

机译:渡过波峰:上皮到间质的过渡和迁移中神经波峰与癌症之间的相似之处

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摘要

The neural crest (NC) is first induced as an epithelial population of cells at the neural plate border requiring complex signaling between bone morphogenetic protein, Wnt, and fibroblast growth factors to differentiate the neural and NC fate from the epidermis. Remarkably, following induction, these cells undergo an epithelial-to-mesenchymal transition (EMT), delaminate from the neural tube, and migrate through various tissue types and microenvironments before reaching their final destination where they undergo terminal differentiation. This process is mirrored in cancer metastasis, where a primary tumor will undergo an EMT before migrating and invading other cell populations to create a secondary tumor site. In recent years, as our understanding of NC EMT and migration has deepened, important new insights into tumorigenesis and metastasis have also been achieved. These discoveries have been driven by the observation that many cancers misregulate developmental genes to reacquire proliferative and migratory states. In this review, we examine how the NC provides an excellent model for studying EMT and migration. These data are discussed from the perspective of the gene regulatory networks that control both NC and cancer cell EMT and migration. Deciphering these processes in a comparative manner will expand our knowledge of the underlying etiology and pathogenesis of cancer and promote the development of novel targeted therapeutic strategies for cancer patients. (C) 2013 Wiley Periodicals, Inc.
机译:神经c(NC)首先被诱导为神经板边界处的上皮细胞群,需要在骨形态发生蛋白,Wnt和成纤维细胞生长因子之间进行复杂的信号传递,以区分神经元和NC命运与表皮。引人注目的是,这些细胞在诱导后经历了上皮到间充质的过渡(EMT),从神经管中分层,并通过各种组织类型和微环境迁移,然后到达最终分化的最终目的地。此过程反映在癌症转移中,在该转移中,原发性肿瘤将经历EMT,然后迁移并侵入其他细胞群体以形成继发性肿瘤部位。近年来,随着我们对NC EMT和迁移的了解加深,关于肿瘤发生和转移的重要新见解也得到了实现。这些发现是由以下观察驱动的:许多癌症会错误调节发育基因以重新获得增生和迁徙状态。在这篇评论中,我们研究了NC如何为研究EMT和迁移提供了一个出色的模型。从控制NC和癌细胞EMT和迁移的基因调控网络的角度讨论了这些数据。以比较的方式解读这些过程将扩大我们对癌症的潜在病因和发病机理的了解,并促进针对癌症患者的新型靶向治疗策略的发展。 (C)2013 Wiley期刊公司

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